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动物模型中的镰状细胞血管阻塞;密集细胞选择性滞留的活体显微镜检查和放射性核素成像

Sickle cell vaso-occlusion in an animal model; intravital microscopy and radionuclide imaging of selective sequestration of dense cells.

作者信息

Kurantsin-Mills J, Jacobs H M, Lessin L S

出版信息

Prog Clin Biol Res. 1987;240:313-27.

PMID:3112802
Abstract

The impaired deformability and heterogeneity of erythrocytes in sickle cell disease endows them with abnormal microvascular flow dynamics. In the sickle cell exchange-transfused rat model, sickle cells exhibit lower volumetric flux and shear rates compared to normal (HbAA) or autologous rat cells. A subpopulation of dense sickle cells and irreversibly sickled cells show a propensity to induce occlusion at precapillary arterioles, residing at such sites for several seconds and causing local rheological disequilibrium. Radionuclide studies with indium-111 demonstrate preferential uptake of labeled HbSS cells in pulmonary microcirculation. These data are relevant to the factors that are involved in the initiation and propagatin of vaso-occlusion resulting in derangement of homeostasis in certain microvascular beds and perhaps painful crisis and selective organ injury.

摘要

镰状细胞病中红细胞变形能力受损和异质性使其具有异常的微血管血流动力学。在镰状细胞交换输血大鼠模型中,与正常(HbAA)或自体大鼠细胞相比,镰状细胞表现出较低的体积通量和剪切速率。致密镰状细胞和不可逆镰状细胞亚群显示出在毛细血管前小动脉处诱导阻塞的倾向,它们在这些部位停留数秒并导致局部流变学失衡。用铟 - 111进行的放射性核素研究表明,标记的HbSS细胞在肺微循环中优先摄取。这些数据与血管阻塞的起始和传播所涉及的因素相关,血管阻塞会导致某些微血管床的内环境稳态紊乱,可能引发疼痛危机和选择性器官损伤。

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